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Modal-Strain-Based Damage Index of Laminated Composite Structures Using Smooth Transition of Displacements

机译:基于位移平滑过渡的层合复合结构基于模态应变的损伤指数

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摘要

A modal-strain-based damage index is proposed to investigate the damage effects of discrete delaminations in a laminated composite structure. The Fermi-Dirac distribution function is incorporated with an improved layerwise laminate theory to model a smooth transition of the displacement and strain fields at the delaminated interfaces. The finite element technique is used to implement the proposed displacement field. Modal analysis is conducted to investigate the dynamic effects of delamination in a laminated structure and to obtain modal strains. The damage index is calculated based on fundamental modal strains of laminated structures. The damage effects of laminated structures are investigated using arbitrary size, number, location, and boundary conditions of discrete delaminations. It is observed that the proposed modal strain damage index provides accurate information of discrete delaminations.
机译:提出了基于模态应变的损伤指数,以研究层状复合结构中离散分层的损伤效应。 Fermi-Dirac分布函数与改进的分层层压理论结合在一起,可以模拟分层界面处位移场和应变场的平滑过渡。有限元技术用于实现所提出的位移场。进行模态分析以研究层压结构中分层的动力效应并获得模态应变。损伤指数是根据叠层结构的基本模态应变计算的。使用任意大小,数量,位置和离散分层的边界条件来研究层状结构的破坏效果。可以看出,所提出的模态应变损伤指数提供了离散分层的准确信息。

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